High rates of chromosome missegregation suppress tumor progression but do not inhibit tumor initiation

Author:

Zasadil Lauren M.12,Britigan Eric M. C.12,Ryan Sean D.1,Kaur Charanjeet1,Guckenberger David J.3,Beebe David J.34,Moser Amy R.45,Weaver Beth A.14

Affiliation:

1. Department of Cell and Regenerative Biology, University of Wisconsin–Madison, Madison, WI 53705

2. Molecular and Cellular Pharmacology Training Program, University of Wisconsin–Madison, Madison, WI 53705

3. Department of Biomedical Engineering, University of Wisconsin–Madison, Madison, WI 53705

4. Carbone Cancer Center, University of Wisconsin–Madison, Madison, WI 53705

5. Department of Human Oncology, University of Wisconsin–Madison, Madison, WI 53705

Abstract

Aneuploidy, an abnormal chromosome number that deviates from a multiple of the haploid, has been recognized as a common feature of cancers for >100 yr. Previously, we showed that the rate of chromosome missegregation/chromosomal instability (CIN) determines the effect of aneuploidy on tumors; whereas low rates of CIN are weakly tumor promoting, higher rates of CIN cause cell death and tumor suppression. However, whether high CIN inhibits tumor initiation or suppresses the growth and progression of already initiated tumors remained unclear. We tested this using the ApcMin/+ mouse intestinal tumor model, in which effects on tumor initiation versus progression can be discriminated. ApcMin/+ cells exhibit low CIN, and we generated high CIN by reducing expression of the kinesin-like mitotic motor protein CENP-E. CENP-E+/−;ApcMin/+ doubly heterozygous cells had higher rates of chromosome missegregation than singly heterozygous cells, resulting in increased cell death and a substantial reduction in tumor progression compared with ApcMin/+ animals. Intestinal organoid studies confirmed that high CIN does not inhibit tumor cell initiation but does inhibit subsequent cell growth. These findings support the conclusion that increasing the rate of chromosome missegregation could serve as a successful chemotherapeutic strategy.

Publisher

American Society for Cell Biology (ASCB)

Subject

Cell Biology,Molecular Biology

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